Waste gas treatment device for textile auxiliary agent processing

By using a rocker disk and motor-driven installation structure in the textile additive waste gas treatment equipment, the rapid disassembly and replacement of the filter net is achieved, which solves the problem of easy blockage of the equipment, improves the replacement efficiency and filtering effect, and extends the service life of the filter net.

CN223221167UActive Publication Date: 2025-08-15SUZHOU VIMIN CHEM IND CORP
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Patent Information

Application Number
CN202422434533.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-09
Publication Date
2025-08-15
Estimated Expiration
2034-10-09

AI Technical Summary

Technical Problem

The existing textile additive waste gas treatment equipment has a simple structure, which leads to the easy blockage of the filter net, which requires frequent replacement and complex disassembly and assembly, which reduces the replacement work efficiency.

Method used

The installation structure and connection mechanism in the installation shell are adopted. The worm and slide plate are driven to limit the filter screen and disassemble the filter screen by rotating the forward and reverse rotation of the rotating rod and cam. The filter screen is driven up and down to achieve rapid disassembly and replacement.

Benefits of technology

It improves the replacement efficiency of the filter, enhances the exhaust gas filtration effect, extends the service life of the filter, and avoids the reduction in efficiency caused by frequent replacement.

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Abstract

The utility model discloses a waste gas treatment device for textile auxiliary processing, and relates to the technical field of waste gas treatment devices.The waste gas treatment device comprises a mounting shell, the left side and the right side of the top of the mounting shell are communicated and fixedly connected with connecting pipes, and the front ends and the rear ends of the left side and the right side of the inner wall of the mounting shell are fixedly connected with limiting shells; the top of the inner wall of the mounting shell is fixedly connected with a partition plate, the bottom of the outer wall of the sponge plate makes contact with the top of the activated carbon plate, the inner wall of the limiting shell is sleeved with and slidably connected with a storage shell, and the outer wall of the storage shell makes contact with the inner wall of the mounting shell; the wobble plate rotates positively and negatively to drive the worm and the sliding plates on the left side and the right side to perform shielding limiting installation and separation disassembly on the filter screen, so that the filter screen can be quickly disassembled and replaced, the replacement work efficiency is improved, meanwhile, the waste gas filtering efficiency is improved, and the situation that the replacement work efficiency is reduced due to the fact that the filter screen needs to be frequently replaced is avoided.
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Description

Technical Field

[0001] The utility model belongs to the technical field of waste gas treatment devices, and in particular relates to a waste gas treatment device for processing textile auxiliaries. Background Art

[0002] Waste gases emitted during the production of textile auxiliaries contain harmful gases such as sulfur dioxide, hydrogen sulfide, ammonia, methyl mercaptan, and dimethyl sulfide. Direct release of these gases would cause serious environmental pollution. To protect the environment and human health, effective measures must be taken to purify these industrial waste gases and ensure they meet safe emission standards before release.

[0003] Existing equipment is mainly designed and manufactured for the treatment of waste gas used in textile auxiliary processing. The current textile auxiliary waste gas treatment equipment often has a simple structure, and the waste gas contains a large amount of impurities. These impurities will accumulate on the filter net, which can easily cause the net to be blocked. This not only requires frequent replacement of the filter net, but also the existing device has a complicated process of disassembling and assembling the filter net, resulting in reduced replacement efficiency. Summary of the Invention

[0004] The purpose of this utility model is to provide an exhaust gas treatment device for textile auxiliary agent processing. Through the installation mechanism, it solves the problem that the current textile auxiliary agent exhaust gas treatment equipment often has a simple structure, and the exhaust gas contains a large amount of impurities. These impurities will accumulate on the filter net, which can easily cause the net to be blocked. This not only requires frequent replacement of the filter net, but also the existing device has a complicated process for disassembling and assembling the filter net, resulting in reduced replacement work efficiency.

[0005] In order to solve the above technical problems, the utility model is realized through the following technical solutions:

[0006] The utility model is a waste gas treatment device for processing textile auxiliaries, comprising a mounting shell, the left and right sides of the top of the mounting shell are connected and fixedly connected with connecting pipes, the front and rear ends of the left and right sides of the inner wall of the mounting shell are fixedly connected to a limiting shell, the top of the inner wall of the mounting shell is fixedly connected with a partition, and also includes a mounting structure, the mounting structure includes a sealing plate hinged on the left and right sides of the outer wall of the mounting shell, the front end of the bottom of the inner wall of the mounting shell is sleeved and slidably connected with a storage shell, the bottom of the inner wall of the storage shell is provided with an activated carbon plate, the bottom of the outer wall of the activated carbon plate is in contact with the bottom of the inner wall of the storage shell, the top of the activated carbon plate is provided with a sponge plate, the bottom of the outer wall of the sponge plate is in contact with the top of the activated carbon plate, the inner wall of the limiting shell is sleeved and slidably connected with a storage shell, and the outer wall of the storage shell is in contact with the inner wall of the mounting shell.

[0007] Furthermore, the top right side of the outer wall of the storage shell is fixedly connected to a fixed shell, the front and rear ends of the inner wall of the fixed shell are rotatably connected to a bidirectional threaded rod, the front and rear ends of the outer wall of the bidirectional threaded rod are both sleeved and threadedly connected to a slide plate, the outer wall of the slide plate is sleeved and slidably connected to the bottom of the inner wall of the fixed shell, and the front and rear ends of the outer wall of the storage shell are both fixedly connected to a plug-in shell.

[0008] Furthermore, the two slides are fixedly connected to a plug rod on one side close to each other, the outer wall of the plug rod is in contact with the inner wall of the plug shell, the rear end of the outer wall of the bidirectional threaded rod is sleeved and fixedly connected to a worm gear, the rear end of the inner wall of the fixed shell is rotatably connected to a worm, the outer wall of the worm gear is meshed with the inner wall of the worm gear, and the front end of the worm gear is fixedly connected to a rocker.

[0009] Furthermore, the inner wall of the mounting shell is provided with a connecting mechanism, which includes a motor that is sleeved and fixedly connected to the left and right sides of the front and rear ends of the outer wall of the mounting shell, and a plurality of rotating rods are provided on the right side of the outer wall of the mounting shell.

[0010] Furthermore, there are three rotating rods, and a pulley is sleeved and fixedly connected to the right side of the outer wall of the rotating rod, and the left side of the outer wall of the rotating rod at the top front and rear end is sleeved and rotatably connected to the right inner wall of the mounting shell.

[0011] Furthermore, the left end of the rotating rod at the bottom is fixedly connected to the output end of the motor, and the inner walls of the pulleys at the front and rear ends of the top and the inner wall of the pulley at the bottom are both transmission-connected with belts.

[0012] Furthermore, cams are sleeved and fixedly connected to the left sides of the outer walls of the rotating rod at the top front and rear ends, a limiting plate is fixedly connected to the right center of the inner wall of the limiting shell, and a sliding rod is sleeved and slidably connected to the top center of the limiting plate.

[0013] Furthermore, the top end of the sliding rod is fixedly connected to the top of the inner wall of the storage shell, the bottom of the outer wall of the sliding rod is sleeved and fixedly connected with a spring, one end of the spring is fixedly connected to the bottom of the limiting plate, the end of the spring away from the limiting plate is fixedly connected to the top of the sleeve plate, and the bottom end of the sliding rod is fixedly connected with a protrusion.

[0014] The utility model has the following beneficial effects:

[0015] 1. The utility model is configured to drive the worm and the left and right slides to block and limit the installation and disassembly of the filter screen by means of a forward and reverse rotating rocking plate, so that the filter screen can be quickly disassembled and replaced, thereby improving the efficiency of the replacement work and improving the exhaust gas filtration efficiency, thus avoiding the need to frequently replace the filter screen and reducing the efficiency of the replacement work.

[0016] 2. The utility model is configured to start a motor to drive the top rotating rod, the storage shell and the filter to move back and forth up and down to contact and filter the exhaust gas, so that the filter can more fully contact the impurity particles in the exhaust gas, increase the chance of capturing impurities, enhance the filtering effect, and at the same time help disperse the accumulation of impurities in the exhaust gas on the filter, reduce the risk of blockage at a single position, and extend the service life of the filter.

[0017] Of course, any product implementing this utility model does not necessarily need to achieve all of the advantages described above at the same time. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] In order to more clearly illustrate the technical solution of the embodiment of the utility model, the following is a brief introduction to the drawings required for describing the embodiment. Obviously, the drawings described below are only some embodiments of the utility model. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

[0019] Figure 1 It is a schematic diagram of the overall structure of the utility model;

[0020] Figure 2 It is a partial cross-sectional structural diagram of the utility model;

[0021] Figure 3 This is a schematic diagram of the installation mechanism structure of the utility model;

[0022] Figure 4 This is a partially enlarged structural diagram of the installation mechanism of the utility model;

[0023] Figure 5 This is a schematic diagram of the structure of the connection mechanism of the utility model;

[0024] Figure 6 This is a partially enlarged structural diagram of the connecting mechanism of the utility model.

[0025] In the accompanying drawings, the components represented by the reference numerals are as follows:

[0026] 1. Mounting shell; 11. Connecting pipe; 12. Limiting shell; 13. Partition; 2. Mounting structure; 21. Sealing plate; 22. Storage shell; 23. Activated carbon plate; 24. Sponge plate; 25. Storage shell; 26. Fixed shell; 27. Bidirectional threaded rod; 28. Filter; 29. Slide plate; 210. Insert shell; 211. Insert rod; 212. Worm gear; 213. Worm; 214. Rocker; 3. Connecting mechanism; 31. Motor; 32. Rotating rod; 33. Pulley; 34. Belt; 35. Cam; 36. Limiting plate; 37. Sliding rod; 38. Sleeve plate; 39. Spring; 310. Bump. DETAILED DESCRIPTION

[0027] The following is a clear and complete description of the technical solutions in the embodiments of the utility model, combined with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of them. Based on the embodiments of the utility model, all other embodiments obtained by ordinary technicians in this field without making any creative efforts are within the scope of protection of the utility model.

[0028] See also Figure 1-5 As shown, the utility model is a waste gas treatment device for textile auxiliary agent processing, including a mounting shell 1, the left and right sides of the top of the mounting shell 1 are connected and fixedly connected to a connecting pipe 11, the front and rear ends of the left and right sides of the inner wall of the mounting shell 1 are fixedly connected to a limit shell 12, and the top of the inner wall of the mounting shell 1 is fixedly connected to a partition 13, and further comprising;

[0029] The mounting structure 2 includes a sealing plate 21 hinged on the left and right sides of the outer wall of the mounting shell 1, and the front end of the bottom inner wall of the mounting shell 1 is sleeved and slidably connected with a storage shell 22, and the bottom inner wall of the storage shell 22 is provided with an activated carbon plate 23, the outer wall bottom of the activated carbon plate 23 is in contact with the inner wall bottom of the storage shell 22, and the top of the activated carbon plate 23 is provided with a sponge plate 24, and the outer wall bottom of the sponge plate 24 is in contact with the top of the activated carbon plate 23. The inner wall of the limiting shell 12 is sleeved and slidably connected with a storage shell 25, and the outer wall of the storage shell 25 is in contact with the inner wall of the mounting shell 1, and the exhaust gas enters the interior of the device through the left connecting pipe 11, first filtered through the filter mesh 28, and secondly, the filter plate can filter the larger impurities contained in the exhaust gas, and then the exhaust gas passes through the sponge plate 24 and the activated carbon plate 23, and the activated carbon plate 23 and the sponge plate 24 can further absorb other impurities in the exhaust gas, so that the exhaust gas filtering effect is better.

[0030] The top right side of the outer wall of the storage shell 25 is fixedly connected to the fixed shell 26, and the front and rear end of the inner wall of the fixed shell 26 are rotatably connected to the two-way threaded rod 27. The front and rear end of the outer wall of the two-way threaded rod 27 are both sleeved and threadedly connected to a slide plate 29. The outer wall of the slide plate 29 is sleeved and slidably connected to the bottom of the inner wall of the fixed shell 26. The right front and rear end of the outer wall of the storage shell 25 are fixedly connected to the plug shell 210. When the rocker 214 is rotated, the rocker 214 drives the worm 213 to rotate, and the worm 213 drives the worm gear 212 and the two-way threaded rod 27 to rotate. The two-way threaded rod 27 drives the left and right slide plates 29 to slide on the inner wall of the fixed shell 26 and move away from the center of the fixed shell 26. The left and right slide plates 29 respectively drive the left and right plug rods 211 to disengage from the plug shell 210, which makes the slide plate 29 disengage from the limit installation of the filter screen 28, so that the filter screen 28 can be quickly disassembled and replaced.

[0031] The two slides 29 are fixedly connected to the side close to each other with an insertion rod 211, the outer wall of the insertion rod 211 contacts the inner wall of the insertion shell 210, the outer wall rear end of the bidirectional threaded rod 27 is sleeved and fixedly connected with a worm gear 212, and the rear end of the inner wall of the fixed shell 26 is rotatably connected with a worm 213, the outer wall of the worm 213 is meshed with the inner wall of the worm gear 212, and the front end of the worm 213 is fixedly connected with a rocking plate 214, which drives the worm 213 and the left and right slides 29 to block and limit the installation and disassembly of the filter 28 by reversing the rocking plate 214, so that the filter 28 can be quickly disassembled and replaced, thereby improving the efficiency of the replacement work and improving the exhaust gas filtration efficiency, avoiding the need to frequently replace the filter, resulting in reduced replacement efficiency.

[0032] A connecting mechanism 3 is provided on the inner wall of the mounting shell 1. The connecting mechanism 3 includes a motor 31 which is sleeved and fixedly connected to the left and right sides of the front and rear ends of the outer wall of the mounting shell 1. A plurality of rotating rods 32 are provided on the right side of the outer wall of the mounting shell 1. When the motor 31 is started, the motor 31 drives the rotating rod 32, the pulley 33 and the belt 34 at the bottom to rotate.

[0033] There are three rotating rods 32. A pulley 33 is mounted on the right side of the outer wall of the rotating rod 32 and fixedly connected. The left side of the outer wall of the rotating rod 32 at the top front and rear end is mounted on the right inner wall of the mounting shell 1 and rotatably connected. The belt 34 drives the pulley 33, the rotating rod 32 and the cam 35 at the top front and rear end to rotate.

[0034] The left end of the bottom rotating rod 32 is fixedly connected to the output end of the motor 31, and the inner walls of the pulleys 33 at the top front and rear ends and the inner walls of the pulleys 33 at the bottom are both connected with belts 34. The belts 34 drive the pulleys 33 at the top front and rear ends, the rotating rod 32 and the cam 35 to rotate. When the cam 35 rotates to the upper side, the cam 35 drives the protrusion 310 to move upward.

[0035] Cams 35 are sleeved and fixedly connected to the left sides of the outer walls of the rotating rods 32 at the front and rear ends of the top. A limiting plate 36 is fixedly connected to the center of the right side of the inner wall of the limiting shell 12. A sliding rod 37 is sleeved and slidably connected to the top center of the limiting plate 36. The protrusion 310 drives the sleeve plate 38 to squeeze the spring 39 to produce deformation. The sleeve plate 38 drives the sliding rod 37, the storage shell 25 and the filter screen 28 to rise. The cam 35 rotates away from the protrusion 310, and the spring 39 deforms and rebounds to drive the storage shell 25 and the filter screen 28 to move downward, which makes the cam 35 drive the storage shell 25 and the filter screen 28 to move back and forth up and down to filter the incoming exhaust gas.

[0036] The top of the slide rod 37 is fixedly connected to the top of the inner wall of the storage shell 25, and the bottom of the outer wall of the slide rod 37 is sleeved and fixedly connected with a spring 39, one end of the spring 39 is fixedly connected to the bottom of the limit plate 36, and the end of the spring 39 away from the limit plate 36 is fixedly connected to the top of the sleeve plate 38, and the bottom end of the slide rod 37 is fixedly connected with a protrusion 310. By starting the motor 31, the top rotating rod 32 is driven to move back and forth with the storage shell 25 and the filter screen 28 to contact and filter the exhaust gas, so that the filter screen can more fully contact the impurity particles in the exhaust gas, increase the chance of capturing impurities, enhance the filtering effect, and at the same time help to disperse the accumulation of impurities in the exhaust gas on the filter screen, reduce the risk of clogging at a single position, and extend the service life of the filter screen.

[0037] A specific application of this embodiment is as follows: when using the device, the rocking plate 214 is rotated, the rocking plate 214 drives the worm 213 to rotate, the worm 213 drives the worm wheel 212 and the bidirectional threaded rod 27 to rotate, and the bidirectional threaded rod 27 drives the left and right slides 29 to slide on the inner wall of the fixed shell 26 and move away from the center of the fixed shell 26. The left and right slides 29 respectively drive the left and right plug rods 211 to disengage from the plug shell 210, which makes the slides 29 disengage from the limit installation of the filter 28, so that the filter 28 can be quickly disassembled and replaced, and the exhaust gas enters the interior of the device through the left connecting pipe 11. First, it is filtered through the filter 28, and then the larger impurities contained in the exhaust gas can be filtered through the filter plate. Then the exhaust gas passes through the sponge plate 24 and the activated carbon plate 23. The activated carbon plate 23 and the sponge plate 24 can further absorb other impurities in the exhaust gas, so that the exhaust gas filtering effect is better. The worm 213 and the left and right slides 29 are driven by the forward and reverse rotation of the rocking plate 214 to block and limit the installation and disassembly of the filter 28, so that the filter 28 can be quickly disassembled and replaced, thereby improving the efficiency of the replacement work, and at the same time improving the exhaust gas filtration efficiency, avoiding the need to frequently replace the filter, resulting in reduced replacement efficiency.

[0038] When the device is used, the motor 31 is started, and the motor 31 drives the bottom rotating rod 32, the pulley 33 and the belt 34 to rotate. The belt 34 drives the pulley 33, the rotating rod 32 and the cam 35 at the front and rear ends of the top to rotate. When the cam 35 rotates to the upper side, the cam 35 drives the protrusion 310 to move upward. The protrusion 310 drives the sleeve 38 to squeeze the spring 39 to produce deformation. The sleeve 38 drives the slide bar 37, the storage shell 25 and the filter screen 28 to rise. The cam 35 rotates away from the protrusion 310, and the spring 39 deforms and rebounds to drive the storage shell 25 and the filter screen 28 move downward, which causes the cam 35 to drive the storage shell 25 and the filter screen 28 to move back and forth up and down to filter the incoming exhaust gas. By starting the motor 31, the top rotating rod 32 is driven to move back and forth with the storage shell 25 and the filter screen 28 up and down to contact and filter the exhaust gas, so that the filter screen can more fully contact with the impurity particles in the exhaust gas, increase the chance of capturing impurities, enhance the filtering effect, and at the same time help to disperse the accumulation of impurities in the exhaust gas on the filter screen, reduce the risk of clogging at a single position, and extend the service life of the filter screen.

[0039] Throughout this specification, references to terms such as "one embodiment," "example," or "specific example" indicate that the specific features, structures, materials, or characteristics described in conjunction with that embodiment or example are included in at least one embodiment or example of the invention. In this specification, schematic representations of these terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples.

[0040] The preferred embodiments of the utility model disclosed above are intended only to help illustrate the utility model. The preferred embodiments do not describe all details in detail, nor do they limit the utility model to the specific embodiments described. Obviously, many modifications and variations are possible based on the content of this specification. This specification selects and describes these embodiments in detail to better explain the principles and practical applications of the utility model, thereby enabling those skilled in the art to better understand and utilize the utility model. The utility model is limited only by the claims and their full scope and equivalents.

Claims

1. A waste gas treatment device for textile auxiliary agent processing, comprising a mounting shell (1), wherein the left and right sides of the top of the mounting shell (1) are both connected and fixedly connected to a connecting pipe (11), the front and rear ends of the left and right sides of the inner wall of the mounting shell (1) are both fixedly connected to a limiting shell (12), and the top of the inner wall of the mounting shell (1) is fixedly connected to a partition (13), characterized in that: Also includes; The mounting structure (2) comprises a sealing plate (21) hinged on the left and right sides of the outer wall of the mounting shell (1); a storage shell (22) is sleeved on the front end of the bottom of the inner wall of the mounting shell (1) and is slidably connected; an activated carbon plate (23) is provided on the bottom of the inner wall of the storage shell (22); the bottom of the outer wall of the activated carbon plate (23) contacts the bottom of the inner wall of the storage shell (22); a sponge plate (24) is provided on the top of the activated carbon plate (23); the bottom of the outer wall of the sponge plate (24) contacts the top of the activated carbon plate (23); a storage shell (25) is sleeved on the inner wall of the limiting shell (12) and is slidably connected; the outer wall of the storage shell (25) contacts the inner wall of the mounting shell (1).

2. The waste gas treatment device for textile auxiliary agent processing according to claim 1, characterized in that: The top right side of the outer wall of the storage shell (25) is fixedly connected to the fixed shell (26), the front end and the rear end of the inner wall of the fixed shell (26) are rotatably connected to the bidirectional threaded rod (27), the front end and the rear end of the outer wall of the bidirectional threaded rod (27) are sleeved and threadedly connected to the slide plate (29), the outer wall of the slide plate (29) is sleeved and slidably connected to the bottom of the inner wall of the fixed shell (26), and the front end and the rear end of the outer wall of the storage shell (25) are fixedly connected to the plug shell (210).

3. The waste gas treatment device for textile auxiliary agent processing according to claim 2, characterized in that: The two slides (29) are fixedly connected to an insertion rod (211) on one side close to each other, the outer wall of the insertion rod (211) contacts the inner wall of the insertion shell (210), the rear end of the outer wall of the bidirectional threaded rod (27) is sleeved with and fixedly connected to a worm wheel (212), the rear end of the inner wall of the fixed shell (26) is rotatably connected to a worm (213), the outer wall of the worm (213) is meshed with the inner wall of the worm wheel (212), and the front end of the worm (213) is fixedly connected to a rocker (214).

4. The waste gas treatment device for textile auxiliary agent processing according to claim 3, characterized in that: The inner wall of the mounting shell (1) is provided with a connecting mechanism (3), the connecting mechanism (3) comprising a motor (31) sleeved and fixedly connected to the left and right sides of the front and rear ends of the outer wall of the mounting shell (1), and a plurality of rotating rods (32) are provided on the right side of the outer wall of the mounting shell (1).

5. The waste gas treatment device for textile auxiliary agent processing according to claim 4, characterized in that: There are three rotating rods (32), and a pulley (33) is sleeved on the right side of the outer wall of the rotating rod (32) and fixedly connected. The left side of the outer wall of the rotating rod (32) at the top front and rear ends is sleeved and rotatably connected to the right inner wall of the mounting shell (1).

6. The waste gas treatment device for textile auxiliary agent processing according to claim 5, characterized in that: The left end of the rotating rod (32) at the bottom is fixedly connected to the output end of the motor (31), and the inner walls of the pulley (33) at the front and rear ends of the top and the inner wall of the pulley (33) at the bottom are both connected to the belt (34).

7. The waste gas treatment device for textile auxiliary agent processing according to claim 6, characterized in that: Cams (35) are sleeved and fixedly connected to the left side of the outer wall of the rotating rod (32) at the top front end and the rear end, and a limiting plate (36) is fixedly connected to the center of the right side of the inner wall of the limiting shell (12), and a sliding rod (37) is sleeved and slidably connected to the center of the top of the limiting plate (36).

8. The waste gas treatment device for textile auxiliary agent processing according to claim 7, characterized in that: The top end of the slide rod (37) is fixedly connected to the top of the inner wall of the storage shell (25), and a spring (39) is sleeved and fixedly connected to the bottom of the outer wall of the slide rod (37). One end of the spring (39) is fixedly connected to the bottom of the limit plate (36), and the end of the spring (39) away from the limit plate (36) is fixedly connected to the top of the sleeve plate (38). The bottom end of the slide rod (37) is fixedly connected to a protrusion (310).